,Analysis of the influence of various effects on frequency shifts of the acetylene saturated absorpt

来源 :中国物理B(英文版) | 被引量 : 0次 | 上传用户:sfbw
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Frequency shifts of the acetylene saturated absorption lines at 1.5μm with temperature,gas pressure and laser power have been investigated in detail.The second-order Doppler effect,the recoil effect,the Zeeman effect,the pressure shift and the power shift are taken into consideration.The magnitudes of those shifts caused by various effects are evaluated.In order to reproduce the stability of 5.7 x 10-14 obtained by Edwards,all necessary conditions are given.The results show that when there is a larger exteal magnetic field,the Zeeman shift could not be neglected,so that the shield should be employed.And the design of a long cavity is advantageous to reduce the influence of the second-order Doppler effect.The results also show that at least ±2.5°C temperature control for cavity can effectively prevent several effects and improve the frequency stability.
其他文献
The simulations of three-dimensional particle dynamics show that when irradiated by an ultrashort intense laser pulse, the deuterated methane cluster expands an
This paper studies the mean first passage time (or exit time, or escape time) over the non-fluctuating potential barrier for a system driven only by a dichotomo
This paper introduces a new four-dimensional (4D) hyperchaotic system, which has only two quadratic nonlinearity parameters but with a complex topological struc
This paper is involved with the adaptive control and synchronization problems for an uncertain new hyperchaotic Lorenz system. Based on the Lyapunov stability t
By introducing an auxiliary ordinary differential equation and solving it by the method of variable separation,abundant types of explicit and exact solutions fo
70—2是耐阴湿、抗干旱、植株高度中上、配合力较高的自交系。用70—2做母本制种时,若按照花丝抽出苞叶到花丝萎蔫都能受粉安排父母本的花期调差、果穗秃根特别是秃顶现象比
Knowledge of the microscopic structure,including three-dimensional(3-D)size and orientation of the precipitates,is essential to fully understand the mechanical